Bottom-Up Effects on Biomass Versus Top-Down Effects on Identity: A Multiple-Lake Fish Community Manipulation Experiment

被引:0
作者
Pieter Lemmens
Steven A. J. Declerck
Karen Tuytens
Maarten Vanderstukken
Luc De Meester
机构
[1] KU Leuven,Laboratory of Aquatic Ecology, Evolution and Conservation
[2] Netherlands Institute of Ecology (NIOO-KNAW),Department of Aquatic Ecology
[3] KU Leuven Kulak,Laboratory of Aquatic Biology
来源
Ecosystems | 2018年 / 21卷
关键词
trophic cascades; bottom-up; top-down; multiple-lake experiment; fish community composition; zooplankton; phytoplankton;
D O I
暂无
中图分类号
学科分类号
摘要
The extent to which ecosystems are regulated by top-down relative to bottom-up control has been a dominant paradigm in ecology for many decades. For lakes, it has been shown that predation by fish is an important determinant of variation in zooplankton and phytoplankton community characteristics. Effects of fish are expected to not only be a function of total fish biomass, but also of functional composition of the fish community. Previous research on the importance of trophic cascades in lakes has largely focused on the role of zooplanktivorous and piscivorous fish. We conducted a large-scale multiple-lake fish community manipulation experiment to test for the effect of differences in fish functional community composition on the trophic structure of lakes. We examine the effect of top-down and bottom-up factors on phytoplankton and zooplankton biomass as well as on their community composition. We put our data in a broader perspective by comparing our results to data of a survey that also included ponds with low fish densities as well as ponds with very high densities of fish. Our results indicate that the overall food web structure under relative high fish densities is primarily structured by bottom-up factors, whereas community characteristics seem to be primarily regulated by top-down factors. Our results suggest a subtle interplay between bottom-up and top-down factors, in which bottom-up factors dominate in determining quantities while top-down effects are important in determining identities of the communities.
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页码:166 / 177
页数:11
相关论文
共 211 条
[1]  
Attayde JL(2001)Fish-mediated nutrient recycling and the trophic cascade in lakes Canadian Journal of Fisheries and Aquatic Sciences 58 1924-1931
[2]  
Hansson L-A(1997)Pike (Esox lucius L.) stocking as a biomanipulation tool 1. Effects on the fish population in Lake Lyng Denmark. Hydrobiologia 342 311-318
[3]  
Berg S(2008)Forward selection of explanatory variables Ecology 89 2623-2632
[4]  
Jeppesen E(1976)A review of some problems in zooplankton production studies Norwegian Journal of Zoology 24 416-456
[5]  
Søndergaard M(1994)Effects of benthivorous bream (Abramis brama) and carp (Cyprius carpio) on sediment resuspension and concentration of nutrients and chlorophyll-a Freshwater Biology 32 113-121
[6]  
Blanchet FG(1965)Predation, body size and composition of plankton Science 150 28-35
[7]  
Legendre P(2001)Trophic cascades, nutrients, and lake productivity: whole-lake experiments Ecological Monographs 71 163-186
[8]  
Borcard D(1996)Chlorophyll variability, nutrient input, and grazing: evidence from whole-lake experiments Ecology 77 725-735
[9]  
Bottrell H(1985)Cascading Trophic Interactions and Lake Productivity BioScience 35 634-639
[10]  
Duncan A(1994)Fish interactions with the sediment-water interface Hydrobiologia 275 301-311